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Patterns and drivers of avian taxonomic and phylogenetic beta diversity in China vary across geographical backgrounds and dispersal abilities

  • Jian Chao Liang
  • , Zhi Feng Ding
  • , Chun Lin Li
  • , Yi Ming Hu
  • , Zhi Xin Zhou
  • , Gan Wen Lie
  • , Xiao Nan Niu
  • , Wen Bin Huang
  • , Hui Jian Hu*
  • , Xing Feng Si*
  • *此作品的通讯作者
  • Institute of Zoology, Guangdong Academy of Sciences
  • School of Resources and Environmental Engineering, Anhui University
  • Guangdong Eco-Engineering Polytechnic
  • Huizhou Botanical Garden Management Service Center)
  • Administration of National Nature Reserve for Marine Ecology of Guangdong Nanpeng Islands

科研成果: 期刊稿件文章同行评审

摘要

Geographical background and dispersal ability may strongly influence assemblage dissimilarity; however, these aspects have generally been overlooked in previous large-scale beta diversity studies. Here, we examined whether the patterns and drivers of taxonomic beta diversity (TBD) and phylogenetic beta diversity (PBD) of breeding birds in China vary across (1) regions on both sides of the Hu Line, which demarcates China's topographical, climatic, economic, and social patterns, and (2) species with different dispersal ability. TBD and PBD were calculated and partitioned into turnover and nestedness components using a moving window approach. Variables representing climate, habitat heterogeneity, and habitat quality were employed to evaluate the effects of environmental filtering. Spatial distance was considered to assess the impact of dispersal limitation. Variance partitioning analysis was applied to assess the relative roles of these variables. In general, the values of TBD and PBD were high in mountainous areas and were largely determined by environmental filtering. However, different dominant environmental filters on either side of the Hu Line led to divergent beta diversity patterns. Specifically, climate-driven species turnover and habitat heterogeneity-related species nestedness dominated the regions east and west of the line, respectively. Additionally, bird species with stronger dispersal ability were more susceptible to environmental filtering, resulting in more homogeneous assemblages. Our results indicated that regions with distinctive geographical backgrounds may present different ecological factors that lead to divergent assemblage dissimilarity patterns, and dispersal ability determines the response of assemblages to these ecological factors. Identifying a single universal explanation for the observed pattern without considering these aspects may lead to simplistic or incomplete conclusions. Consequently, a comprehensive understanding of large-scale beta diversity patterns and effective planning of conservation strategies necessitate the consideration of both geographical background and species dispersal ability.

源语言英语
页(从-至)125-135
页数11
期刊Zoological Research
45
1
DOI
出版状态已出版 - 2024

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